Abstract:
An image capturing apparatus includes a main body and a rotatable image capturing unit. The main body includes a spherical portion having at least three support points. The rotatable image capturing unit includes an image capturing optical system, and is configured to rotationally move while being supported by the support points. In the rotatable image capturing unit, a gravitional point is located so as to overlap a center of gravity of a polygonal plane formed by connecting the support points and present on a side closer to an image sensor the polygonal plane in a direction perpendicular to the polygonal plane.
Abstract:
The information device includes an imaging unit that images a subject and generates image data of the subject, a meta information generating unit that generates meta information related to the image data generated by the imaging unit, a possibility information generating unit that generates, with respect to the meta information, possibility information setting whether or not change of original information is possible by an external device when the meta information is transmitted to the external device, and an image file generating unit that generates an image file associating the image data generated by the imaging unit, the meta information generated by the meta information generating unit, and the possibility information generated by the possibility information generating unit with one another.
Abstract:
A driving device moves a movable lens in a plane direction intersecting at right angles with an optical axis to correct a shake. The driving device includes a movable frame which holds the movable lens, a fixed frame facing the movable frame, three balls held between the movable frame and the fixed frame, a single tension spring which pulls the movable frame toward the fixed frame to press the three balls, and VCMs which move the movable frame relative to the fixed frame. The tension spring is located inside a triangle that connects the centers of the three balls and outside a holding region where the movable frame holds the movable lens.
Abstract:
A vibrating device includes a transducer including a plate-like dust-proof member and a vibration-applying member configured to vibrate the dust-proof member, a holder arranged a predetermined space apart from the dust-proof member, a sealing member configured to seal a space between the dust-proof member and the holder, and a pressing supporting member having formed therein pressing sections configured to press the dust-proof member, supporting sections for maintaining supporting of the dust-proof member or the vibration-applying member when an external force is applied to the dust-proof member, and fixing sections with respect to the holder. The pressing sections are respectively provided in positions symmetrical to each other across an imaginary axis passing a center of gravity of the transducer. Rigidity of the supporting sections is set higher than rigidity of the pressing sections.
Abstract:
An imaging apparatus includes: an imaging optical system having a variable power lens and a focus lens; an imaging element that generates image data via the imaging optical system; a movable frame that holds the focus lens and is movable along an optical axis of the imaging optical system; a first driving unit that causes the movable frame to move toward an in-focus position along the optical axis direction; a focus sensitivity determination unit that, based on a zoom position of the variable power lens, determines whether a focus sensitivity indicating a ratio of a change amount of the in-focus position to a movement amount of the focus lens is equal to or smaller than a specified value; and a driving controller that drives the first driving unit to move the movable frame to the in-focus position if the focus sensitivity is larger than the specified value.